A detailed knowledge of the status of the retina in neurodegenerative conditions is a crucial point for the development of therapeutics in retinal pathologies and to translate eye research to CNS disease. In this context, manipulating signaling pathways that lead to neuronal regeneration offers an excellent opportunity to substitute damaged cells and, thus, restore the tissue functionality. Alternative systems and methods are increasingly being considered to replace/reduce in vivo approaches in the study of retina pathophysiology. Herein, we present recent data obtained from the zebrafish (Danio rerio) and the fruit fly Drosophila melanogaster that bring promising advantages into studying and modeling, at a preclinical level, neurodegenerat...
Zebrafish show an extraordinary potential for regeneration in several organs from fins to central ne...
The retina is the neural tissue situated at the back of the eyes that samples the visual scene and s...
Zebrafish show an extraordinary potential for regeneration in several organs from fins to central ne...
A detailed knowledge of the status of the retina in neurodegenerative conditions is a crucial point ...
Thesis (Ph.D.)--University of Washington, 2016-08Like in other parts of the central nervous system (...
AbstractZebrafish possess a robust, innate CNS regenerative ability. Combined with their genetic tra...
Müller glia, the major glial cell types in the retina, maintain retinal homeostasis and provide stru...
Müller glia, the major glial cell types in the retina, maintain retinal homeostasis and provide stru...
Due to the lack of axonal regeneration, age-related deterioration in the central nervous system (CNS...
Many structural, functional and developmental similarities exist between zebrafish and human retinas...
International audienceRetinal dystrophies are a major cause of blindness for which there are current...
Retinal Müller glia (MG) can act as stem-like cells to generate new neurons in both zebrafish and mi...
The review is an overview of the current knowledge of neuronal regeneration properties in mammals an...
As adult mammals lack the capacity to regenerate damaged neurons, dysfunction of the central nervous...
SummaryNeuronal degenerations in the retina are leading causes of blindness. Like most other areas o...
Zebrafish show an extraordinary potential for regeneration in several organs from fins to central ne...
The retina is the neural tissue situated at the back of the eyes that samples the visual scene and s...
Zebrafish show an extraordinary potential for regeneration in several organs from fins to central ne...
A detailed knowledge of the status of the retina in neurodegenerative conditions is a crucial point ...
Thesis (Ph.D.)--University of Washington, 2016-08Like in other parts of the central nervous system (...
AbstractZebrafish possess a robust, innate CNS regenerative ability. Combined with their genetic tra...
Müller glia, the major glial cell types in the retina, maintain retinal homeostasis and provide stru...
Müller glia, the major glial cell types in the retina, maintain retinal homeostasis and provide stru...
Due to the lack of axonal regeneration, age-related deterioration in the central nervous system (CNS...
Many structural, functional and developmental similarities exist between zebrafish and human retinas...
International audienceRetinal dystrophies are a major cause of blindness for which there are current...
Retinal Müller glia (MG) can act as stem-like cells to generate new neurons in both zebrafish and mi...
The review is an overview of the current knowledge of neuronal regeneration properties in mammals an...
As adult mammals lack the capacity to regenerate damaged neurons, dysfunction of the central nervous...
SummaryNeuronal degenerations in the retina are leading causes of blindness. Like most other areas o...
Zebrafish show an extraordinary potential for regeneration in several organs from fins to central ne...
The retina is the neural tissue situated at the back of the eyes that samples the visual scene and s...
Zebrafish show an extraordinary potential for regeneration in several organs from fins to central ne...